








Coolant Temp Sensor Toyota Prado Landcruiser KDJ VDJ 1KD-FTV 1VD-FTV Diesel
Workshop Grade Replaces 89422-33030
BRAND NEW *OEM Quality* coolant temperature sensor to suit Toyota LandCruiser Prado KDJ120 and KDJ150 with the 1KD-FTV 3.0L turbo diesel, and Toyota LandCruiser VDJ79 and VDJ200 with the 1VD-FTV 4.5L V8 twin-turbo diesel.
Hard starting when cold, rough idle, or a check engine light on your Prado or LandCruiser diesel? The coolant temperature sensor is a known failure point on both the 1KD-FTV and 1VD-FTV engines. Coolant management is critical on these heavy-duty diesel engines - a faulty sensor causes the ECU to misjudge engine temperature, leading to incorrect fuel delivery and glow plug timing at exactly the wrong moment. This is a direct-fit replacement. Same-day dispatch before 12pm from Cranbourne VIC.
TO SUIT
- Toyota LandCruiser Prado KDJ120R KDJ125R - 1KD-FTV 3.0L turbo diesel (2003-2009)
- Toyota LandCruiser Prado KDJ150R KDJ155R - 1KD-FTV 3.0L turbo diesel (2009-2017)
- Toyota LandCruiser VDJ79R - 1VD-FTV 4.5L V8 turbo diesel (2007-2023)
- Toyota LandCruiser VDJ200R - 1VD-FTV 4.5L V8 twin-turbo diesel (2007-2023)
OEM PART NUMBERS
- 89422-33030
- 89422-06010
- 89422-0D010
- 89422-0H010
- 89429-47010
OTHER PART NUMBERS
- VEMO: V70-72-0007
- HELLA: 6PT 009 309-231
- WALKER PRODUCTS: 211-1060
- FAE: 33255
- MEYLE: 30-14 821 0002
PACKAGE INCLUDES
1 x Coolant Temperature Sensor - 2-pin oval connector, M12x1.5mm thread, 19mm spanner size, white socket, with seal ring.
ABOUT THIS SENSOR
The coolant temperature sensor on the 1KD-FTV and 1VD-FTV diesel engines monitors coolant temperature and sends this data to the ECU, which uses it to manage cold-start fuel enrichment, glow plug pre-heat duration, idle speed, and cooling fan activation.
A faulty sensor causes the ECU to miscalculate engine temperature - leading to hard cold starts, rough idle, excessive black smoke, and increased fuel consumption on both the 3.0L and 4.5L diesel variants.
COMMON SYMPTOMS OF FAILURE
- Inaccurate or erratic temperature gauge reading
- Hard starting or excessive cranking when cold
- Rough idle when cold
- Black smoke from exhaust
- Increased fuel consumption
- Check engine light - codes P0115 P0116 P0117 P0118
How do I test a coolant temperature sensor?
The most common test is to measure the sensor resistance with a multimeter at a known coolant temperature and compare against the manufacturer resistance curve. A cold engine (20 degrees C) typically reads 2,000 to 3,000 ohms and drops to around 200 to 300 ohms at operating temperature (90 degrees C). An OBD2 scanner showing a fixed temperature reading that does not change as the engine warms up is also a strong indicator of sensor failure.
Can a faulty coolant temperature sensor cause my engine to overheat?
Indirectly yes. If the sensor reports a lower temperature than actual, the ECU may not activate the cooling fan at the correct time, allowing the engine to overheat. It can also suppress the dashboard warning light, meaning you may not be alerted until the engine is already at a dangerously high temperature. Replace a suspected faulty sensor promptly.
Do I need to drain the coolant to replace the sensor?
Not always - many coolant temperature sensors can be replaced quickly with minimal coolant loss if you work fast and have a replacement ready to thread in immediately. However on some vehicles the sensor location requires partial coolant drainage. Check the sensor position on your specific engine before starting. Always use fresh coolant when topping up after replacement.
What are the symptoms of a faulty coolant temperature sensor?
Symptoms include poor fuel economy, black smoke, engine overheating warning, incorrect temperature gauge reading, hard starting when cold, and rough idle. Fault codes P0115 to P0119 are commonly associated with coolant temperature sensor faults.
Is it safe to drive with a bad coolant temperature sensor?
A faulty coolant temperature sensor can cause the ECU to run rich fuel mixtures and prevent the cooling fan from operating correctly, risking engine overheating. Replace it promptly - it is a low-cost part that can prevent expensive engine damage.
How do I know if my coolant temperature sensor or my thermostat is faulty?
A faulty thermostat typically causes the engine to overheat or never reach operating temperature. A faulty coolant temp sensor causes incorrect gauge readings and running issues but the coolant itself may be at the correct temperature. An OBD2 scanner showing live coolant temp data helps distinguish between the two.
Are there two coolant temperature sensors on my vehicle?
Many vehicles have two sensors - one for the ECU (engine management) and one for the dashboard temperature gauge. They look similar but are not interchangeable. Check your vehicle's service manual or contact us with your vehicle details to confirm which sensor you need.
| Identification | |
|---|---|
| SKU | CCS52-Prado |
| Brand | Aftermarket OEM Replacement |
| Part Numbers | |
| Part Number | CCS52 |
| Reference OEM Number | 89422-33030 |
| Other OEM Numbers | 89422-06010, 89422-0D010, 89422-0H010, 89422-33030 |
| Related Part Numbers | CCS52, CS855, CTS1105, TCS120 |
| Trade Part Numbers | VEMO: V70-72-0007, WALKER PRODUCTS: 211-1060 |
| Product Specifics | |
| Sensor Type | Coolant Temperature Sensor |
| Type | Sensor |
| Features | Direct Fit |
| Manufacturer Warranty | 1 Year |
| Thread Size | M12x1.5 mm |
| Spanner Size | 19 mm |
| Number of pins | 2 -pin connector |
| Connector Shape | oval |
| Supplementary Article Info | with seal ring |
| Housing Colour | White |
| Other Details | |
| Note | Always verify fitment using your vehicle's OEM part number. |
| Unit Of Measure | ea |
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